Scientific article
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English

Resurgence and renormalons in the one-dimensional Hubbard model

Published inSciPost physics, vol. 13, no. 5, p. 1-35
Publication date2022
First online date2022-11-22
Abstract

We use resurgent analysis to study non-perturbative aspects of the one-dimensional, multicomponent Hubbard model with an attractive interaction and arbitrary filling. In the two-component case, we show that the leading Borel singularity of the perturbative series for the ground-state energy is determined by the energy gap, as expected for superconducting systems. This singularity turns out to be of the renormalon type, and we identify a class of diagrams leading to the correct factorial growth. As a consequence of our analysis, we propose an explicit expression for the energy gap at weak coupling in the multi-component Hubbard model, at next-to-leading order in the coupling constant. In the two-component, half-filled case, we use the Bethe ansatz solution to determine the full trans-series for the ground state energy, and the exact form of its Stokes discontinuity.

Keywords
  • Energy: ground state
  • Energy: gap
  • Dimension: 1
  • Higher-order: 1
  • Hubbard model
  • Singularity
  • Renormalon
  • Coupling constant
  • Superconductivity
  • Nonperturbative
  • Weak coupling
  • Bethe ansatz
Funding
Citation (ISO format)
MARINO BEIRAS, Marcos, MARTINS DE OLIVEIRA, Tomas. Resurgence and renormalons in the one-dimensional Hubbard model. In: SciPost physics, 2022, vol. 13, n° 5, p. 1–35. doi: 10.21468/scipostphys.13.5.113
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Article (Published version)
Identifiers
Additional URL for this publicationhttps://scipost.org/10.21468/SciPostPhys.13.5.113
Journal ISSN2542-4653
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